蒸汽压差
显热
干燥
大气科学
环境科学
涡度相关法
蒸发
潜在蒸发
行星边界层
含水量
水分
潜热
热浪
大气(单位)
气候学
降水
干旱指数
热流密度
边界层
气候变化
传热
气象学
生态系统
地质学
蒸腾作用
化学
物理
热力学
海洋学
外科
医学
生态学
生物化学
生物
光合作用
岩土工程
作者
Eva Lansu,Chiel C. van Heerwaarden,Annemiek I. Stegehuis,Adriaan J. Teuling
摘要
Abstract Land‐atmosphere feedbacks, in particular the response of land evaporation to vapor pressure deficit (VPD) or the dryness of the air, remain poorly understood. Here we investigate the VPD response by analysis of a large database of eddy covariance flux observations and simulations using a conceptual model of the atmospheric boundary layer. Data analysis reveals that under high VPD and corresponding high temperatures, forest in particular reduces evaporation and emits more sensible heat. In contrast, grass increases evaporation and emits less sensible heat. Simulations show that this VPD feedback can induce significant temperature increases over forest of up to 2 K during heat wave conditions. It is inferred from the simulations that the effect of the VPD feedback corresponds to an apparent soil moisture depletion of more than 50%. This suggests that previous studies may have incorrectly attributed the effects of atmospheric aridity on temperature to soil dryness.
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